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Dive into the research topics where Daisuke Nishioka is active.

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Featured researches published by Daisuke Nishioka.


Angewandte Chemie | 2015

Widening Synthesis Bottlenecks: Realization of Ultrafast and Continuous‐Flow Synthesis of High‐Silica Zeolite SSZ‐13 for NOx Removal

Zhendong Liu; Toru Wakihara; Kazunori Oshima; Daisuke Nishioka; Yuusuke Hotta; Shanmugam Palani Elangovan; Yutaka Yanaba; Takeshi Yoshikawa; Watcharop Chaikittisilp; Takeshi Matsuo; Takahiko Takewaki; Tatsuya Okubo

Characteristics of zeolite formation, such as being kinetically slow and thermodynamically metastable, are the main bottlenecks that obstruct a fast zeolite synthesis. We present an ultrafast route, the first of its kind, to synthesize high-silica zeolite SSZ-13 in 10 min, instead of the several days usually required. Fast heating in a tubular reactor helps avoid thermal lag, and the synergistic effect of addition of a SSZ-13 seed, choice of the proper aluminum source, and employment of high temperature prompted the crystallization. Thanks to the ultra-short period of synthesis, we established a continuous-flow preparation of SSZ-13. The fast-synthesized SSZ-13, after copper-ion exchange, exhibits outstanding performance in the ammonia selective catalytic reduction (NH3 -SCR) of nitrogen oxides (NOx ), showing it to be a superior catalyst for NOx removal. Our results indicate that the formation of high-silica zeolites can be extremely fast if bottlenecks are effectively widened.


Archive | 2011

Catalyst for reducing nitrogen oxides and method for producing the same

Takeshi Matsuo; Takahiko Takewaki; Daisuke Nishioka; Kazunori Oshima; Haijun Chen; Hiroyuki Kakiuchi


Chemistry of Materials | 2014

Ultrafast Continuous-Flow Synthesis of Crystalline Microporous Aluminophosphate AlPO4-5

Zhendong Liu; Toru Wakihara; Daisuke Nishioka; Kazunori Oshima; Takahiko Takewaki; Tatsuya Okubo


Chemical Communications | 2014

One-minute synthesis of crystalline microporous aluminophosphate (AlPO4-5) by combining fast heating with a seed-assisted method

Zhendong Liu; Toru Wakihara; Daisuke Nishioka; Kazunori Oshima; Takahiko Takewaki; Tatsuya Okubo


Chemical Communications | 2015

A top-down methodology for ultrafast tuning of nanosized zeolites

Zhendong Liu; Naoki Nomura; Daisuke Nishioka; Yuusuke Hotta; Takeshi Matsuo; Kazunori Oshima; Yutaka Yanaba; Takeshi Yoshikawa; Koji Ohara; Shinji Kohara; Takahiko Takewaki; Tatsuya Okubo; Toru Wakihara


Microporous and Mesoporous Materials | 2016

Ultrafast synthesis of silicalite-1 using a tubular reactor with a feature of rapid heating

Zhendong Liu; Toru Wakihara; Chokkalingam Anand; Sye Hoe Keoh; Daisuke Nishioka; Yuusuke Hotta; Takeshi Matsuo; Takahiko Takewaki; Tatsuya Okubo


Archive | 2010

Organic el device, manufacturing method of organic el device, and electronic apparatus

Yuki Hanamura; Masanori Iwasaki; Shinichi Iwata; Daisuke Nishioka; 正憲 岩▲崎▼; 信一 岩田; 雄基 花村; 大輔 西岡


Archive | 2012

Catalyst, element for nitrogen oxide removal, and system for nitrogen oxide removal

Takeshi Matsuo; Daisuke Nishioka; Takahiko Takewaki; Haijun Chen; Kazunori Oshima


Archive | 2012

CATALYST, DEVICE FOR REMOVING NITROGEN OXIDE, AND SYSTEM FOR REMOVING NITROGEN OXIDE

Takeshi Matsuo; Daisuke Nishioka; Takahiko Takewaki; Haijun Chen; Kazunori Oshima


Archive | 2012

触媒、窒素酸化物浄化用素子、及び窒素酸化物浄化用システム

Takeshi Matsuo; 武士 松尾; Daisuke Nishioka; 大輔 西岡; Takahiko Takewaki; 武脇 隆彦; Haijun Chen; 海軍 陳; Kazunori Oshima; 大島 一典

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Hiroyuki Kakiuchi

Mitsubishi Chemical Corporation

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